Mammalian alpha 1-subunit of Na(+)-K(+)-ATPase does not need its amino terminus to maintain cell viability
- 1 August 1994
- journal article
- Published by American Physiological Society in American Journal of Physiology-Cell Physiology
- Vol. 267 (2) , C590-C597
- https://doi.org/10.1152/ajpcell.1994.267.2.c590
Abstract
The amino terminus of the catalytic alpha-subunit from Na(+)-K(+)-adenosinetriphosphatase (ATPase) is not conserved among the various isoforms and species sequenced to date, yet it always includes a lysine-rich motif. To investigate the functional role played by this highly charged region, we altered the amino terminus of rat alpha 1 and evaluated the ability of the mutant to sustain cell viability. Nucleotide sequence encoding a 10-amino acid epitope from the human c-myc-oncogene product was substituted for the wild-type sequence encoding the first 31 amino acids of alpha 1. The chimeric cDNA containing the myc substitution was then introduced into ouabain-sensitive monkey kidney cells. Selection in ouabain produced viable colonies, suggesting that the introduced mutant was functional and conferred the ouabain-resistant phenotype of rats, despite the removal of the highly charged region from its amino terminus. Subsequent enzymatic analysis confirmed the presence of low-affinity binding sites for ouabain in the recipient colonies, and immunoblotting revealed the myc epitope on the expressed polypeptides in a membrane fraction. These results suggest that the first 31 amino acids are not required for function of alpha 1 and that the posttranslational cleavage associated with the amino terminus is unnecessary.Keywords
This publication has 1 reference indexed in Scilit:
- Disproportionate alpha- and beta-mRNA sodium pump subunit content in canine vascular smooth muscle.Circulation Research, 1991